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Enhancement of the sewage sludge dewaterability by using ethanol and Fe(III)-rice husk

机译:通过使用乙醇和Fe(III)-RICE壳体来增强污泥污泥脱水性

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摘要

Proteins of extracellular polymeric substances (EPS) in sewage sludge play a key role in the sludge dewatering. Ethanol can denature proteins and improve sludge dewaterability. In this study, ethanol was used to precondition and combined with Fe3+ and rice husk (RH) for dewatering enhancement. The experimental results of the capillary suction time (CST) reduction efficiency indicated that the sewage sludge pretreated with ethanol and Fe3+-RH revealed well cooperative formation mechanism with regard to dewatering performance. Using the response surface methodology (RSM) determined that CST reduction efficiency of sewage sludge reached 78.5% under optimal conditions of ethanol 25.21 g/g dry solid (DS), Fe3+ 185.70 mg/g DS, and RH 406.02 mg/g DS, respectively. Moreover, the results showed that the composite conditioner is effective for the specific resistance to filtration decreased from initial 1.66E + 13 m/kg to 2.44E + 11 m/kg. The analysis of EPS showed that extractable proteins in EPS increased to maximum when the sludge was pretreated by Fe3+-RH because EPS were destroyed and proteins in EPS were released. After the addition of ethanol, extractable protein content was reduced because of protein precipitation and released interstitial water and bound water. The sludge morphology analysis indicated that the RH as a skeleton builder provided the outflow passages, which enhanced the dewatering performance of sludge. From these results, the combination treatment of ethanol and Fe3+-RH is a promising synergetic strategy to enhance the dewaterability of sewage sludge.
机译:细胞外聚合物物质(EPS)的蛋白质在污泥中发挥着污泥脱水的关键作用。乙醇可燃蛋白质,改善污泥脱水性。在该研究中,乙醇用于前提并将Fe3 +和稻壳(RH)与Fe3 +和稻壳联合进行脱水增强。毛细管吸入时间(CST)降低效率的实验结果表明,用乙醇和Fe3 + -RH预处理的污水污泥揭示了脱水性能的井合作形成机制。使用响应表面方法(RSM)确定污水污泥的CST降低效率在乙醇25.21g / g干燥固体(ds),Fe3 + 185.70mg / g ds和Rh 406.02mg / g ds的最佳条件下达到78.5% 。此外,结果表明,复合护发素对初始1.66e + 13m / kg至2.44e + 11m / kg的初始耐过滤性有效。 EPS分析表明,当污泥用Fe3 + -RH预处理时,EPS中可提取的蛋白质增加至最大值,因为EPS被破坏,并且释放EPS中的蛋白质。在加入乙醇后,由于蛋白质沉淀和释放间质水和结合的水,减少了可提取的蛋白质含量。污泥形态分析表明,RHS作为骨架建设者提供流出通道,这增加了污泥的脱水性能。从这些结果来看,乙醇和Fe3 + -RH的组合治疗是提高污水污泥的脱水性的有前途的协同策略。

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